Thermal material with nickel-cobalt alloy particles for rubber
A nickel-cobalt alloy and thermal material technology, applied in the direction of heat exchange materials, chemical instruments and methods, etc., can solve the problems of high cost, poor plasticity of thermal conductive materials, small application range, etc., and achieve excellent performance and good thermal conductivity.
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Embodiment 1
[0016] 10 parts of nickel-cobalt alloy particles, 8 parts of graphene, 1 part of phenol, 3 parts of methylimidazole, 5 parts of tackifier, 10 parts of diamond powder, 3 parts of copper, 3 parts of aluminum, 3 parts of polyvinyl chloride, 4 parts of silver powder , 1 part of vulcanizing agent, 2 parts of graphite, 3 parts of silicone rubber, 1 part of ABS resin.
Embodiment 2
[0018] 10 parts of nickel-cobalt alloy particles, 8 parts of graphene, 1 part of phenol, 3 parts of methylimidazole, 5 parts of tackifier, 10 parts of diamond powder, 3 parts of copper, 3 parts of aluminum, 3 parts of polyvinyl chloride, 4 parts of silver powder , 1 part of vulcanizing agent, 2 parts of graphite, 3 parts of silicone rubber, 1 part of ABS resin.
Embodiment 3
[0020] 15 parts of nickel-cobalt alloy particles, 15 parts of graphene, 5 parts of phenol, 6 parts of methylimidazole, 8 parts of tackifier, 15 parts of diamond powder, 6 parts of copper, 6 parts of aluminum, 6 parts of polyvinyl chloride, 6 parts of silver powder , 3 parts of vulcanizing agent, 4 parts of graphite, 6 parts of silicone rubber, 3 parts of ABS resin.
[0021] The heat conduction material prepared by the method has excellent performance and good heat conduction performance.
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